1 |
Enhancement of the red upconversion luminescence in NaYF4:Yb3+, Er3+ nanoparticles by the transition metal ions doping |
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2 |
Characterization of Er/O-doped Si-LEDs with Low Thermal Quenching |
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3 |
Solid solubility and phase transitions in the system LaNb1−xTaxo4 |
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4 |
Multifunctional nanoparticles for upconversion luminescence/MR multimodal imaging and magnetically targeted photothermal therapy |
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5 |
Multi-ion cooperative processes in Yb3+ clusters |
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6 |
Upconversion emission in Er-doped and Er/Yb-codoped ferroelectric Na0.5Bi0.5TiO3 and its temperature sensing application |
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7 |
Upconversion nanoparticles and their composite nanostructures for biomedical imaging and cancer therapy |
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8 |
Hydrothermal synthesis of the intense green photoluminescence of hexagonal phase NaYF4:Yb3+/Er3+ microcrystals |
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9 |
Optical temperature sensor based on upconversion emission in Er-doped ferroelectric 0.5Ba(Zr0.2Ti0.8)O3-0.5(Ba0.7Ca0.3)TiO3 ceramic |
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10 |
Enhanced upconversion multicolor and white light luminescence in SiO2-coated lanthanide-doped GdVO4hydrothermal nanocrystals |
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11 |
Infrared emission and defect centres in Er and Yb codoped Y3Al5O12 phosphors |
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12 |
Ratiometric fluorescent nanoparticles for sensing temperature |
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13 |
Synthesis, Structure, and Thermally Stable Luminescence of Eu2+-Doped Ba2Ln(BO3)2Cl (Ln = Y, Gd and Lu) Host Compounds |
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14 |
Recent advances in the chemistry of lanthanide-doped upconversion nanocrystals |
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15 |
Optical temperature sensing of rare-earth ion doped phosphors |
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16 |
EXPGUI, a graphical user interface forGSAS |
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17 |
Nanometre-scale thermometry in a living cell |
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18 |
Upconversion Luminescence Properties of NaYF4:Yb:Er Nanoparticles Codoped with Gd3+ |
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19 |
Enhancement of red upconversion emission of cubic phase NaLuF4: Yb3+/Ho3+/Ce3+ nanocrystals |
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20 |
Concentration-Dominated Temperature-Dependence of Upconversion Luminescence in Gd6WO12 Nanophosphor Co-Doped with Er3+ and Yb3+ |
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21 |
Microwave-assisted hydrothermal synthesis, temperature quenching and laser-induced heating effect of hexagonal microplate β-NaYF4: Er3+/Yb3+ microcrystals under 1550 nm laser irradiation |
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22 |
Judd–Ofelt analysis, structural and spectroscopic properties of sol–gel derived LaNbO4:Dy3+ phosphors |
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23 |
Zirconia based Ho3+–Yb3+ codoped upconverting nanophosphors for green light emitting devices applications |
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24 |
Optical temperature sensing properties of KLu2F7: Yb3+/Er3+/Nd3+ nanoparticles under NIR excitation |
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25 |
808 nm-triggered optical thermometry based on up-conversion luminescence of Nd3+/Yb3+/Er3+ doped MIn2O4 (M = Ca, Sr and Ba) phosphors |
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26 |
Lanthanide‐Based Thermometers: At the Cutting‐Edge of Luminescence Thermometry |
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27 |
DNA-mediated coordinative assembly of upconversion hetero-nanostructures for targeted dual-modality imaging of cancer cells |
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28 |
808 nm light triggered up-conversion optical nano-thermometer YPO4:Nd3+/Yb3+/Er3+ based on FIR technology |
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29 |
Concentration and pump power-mediated color tunability, optical heating and temperature sensing via TCLs of red emission in an Er3+/Yb3+/Li+ co-doped ZnGa2O4 phosphor |
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30 |
Wide-range and highly-sensitive optical thermometers based on the temperature-dependent energy transfer from Er to Nd in Er/Yb/Nd codoped NaYF4 upconversion nanocrystals |
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31 |
Enhanced green up-conversion luminescence in In2O3:Yb3+/Er3+ by tri-doping Zn2+ |
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32 |
Luminescence properties of PbF2:Nd3+,Er3+, Yb3+Phosphors and it’s multi-wavelength sensitive bidirectional conversion mechanism |
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33 |
Er3+-Yb3+-Na+:ZnWO4 phosphors for enhanced visible upconversion and temperature sensing applications |
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34 |
Laser-induced thermal effect and the role of Nd3+ in Tm3+/Yb3+/Nd3+ triply doped LaNbO4 up-conversion phosphors under 808 nm excitation |
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35 |
3.9 μm emission and energy transfer in ultra-low OH−, Ho3+ /Nd3+ co-doped fluoroindate glasses |
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36 |
Temperature sensitivity based on Er3+ fluorescence fluctuation in Gd2Ti2O7: Er3+-Yb3+ porous nanofibers |
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37 |
Optical temperature sensing properties of Tm3+/Yb3+ co-doped LuAG polycrystalline phosphor based on up-conversion luminescence |
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38 |
A three-mode self-referenced optical thermometry based on up-conversion luminescence of Ca2MgWO6:Er3+,Yb3+ phosphors |
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39 |
Rational Design of Ratiometric Luminescence Thermometry Based on Thermally Coupled Levels for Bioapplications |
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40 |
Luminescence anti‐counterfeiting: From elementary to advanced |
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41 |
Overcoming thermal quenching in upconversion nanoparticles |
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42 |
Analogy of different optical temperature sensing techniques in LaNbO4:Er3+/Yb3+ phosphor |
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43 |
Nonlinear Optical Thermometry—A Novel Temperature Sensing Strategy via Second Harmonic Generation (SHG) and Upconversion Luminescence in BaTiO3:Ho3+,Yb3+ Perovskite |
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44 |
The effect of temperature on green and red upconversion emissions of LiYF4:20Yb3+, 1Ho3+ and its application for temperature sensing |
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45 |
Extremely intense green up-conversion luminescent and ultra-high temperature sensitivity in Er3+/Yb3+ co-doped BiTa7O19 phosphors |
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46 |
Anti-thermal-quenching red-emitting GdNbO4:Pr3+ phosphor based on metal-to-metal charge transfer for optical thermometry application |
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47 |
Responsive Sensors of Upconversion Nanoparticles |
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48 |
Recent advances in upconversion nanoparticle-based nanocomposites for gas therapy |
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49 |
High sensitivity thermometry using Yb3+/Er3+ co-doped LuNbO4 nanoparticles over a wide temperature range |
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50 |
Excitation-Power-Dependent Upconversion Luminescence Competition in Single β-NaYbF4:Er Microcrystal Pumped at 808 nm |
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51 |
Frequency upconversion based thermally stable molybdate phosphors in a temperature sensing probe |
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52 |
Lanthanide-doped heterostructured nanocomposites toward advanced optical anti-counterfeiting and information storage |
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53 |
Effects of Yb3+ concentration on up-conversion luminescence and temperature sensing characteristics of Tm3+/Yb3+:Y2O3 phosphors |
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54 |
Optimization of obtaining of translucent luminescent ceramics YNbO4 by uniaxial hot pressing from crystal powders synthesized by sol-gel |
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55 |
Optical temperature sensing properties and thermoluminescence behavior in Er-modified potassium sodium niobate-based multifunctional ferroelectric ceramics |
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